Crops ›› 2017, Vol. 33 ›› Issue (2): 98-103.doi: 10.16035/j.issn.1001-7283.2017.02.017

Previous Articles     Next Articles

Effects of Bio-organic Fertilizer on Physiological Characters and Yield of Maize in Saline-Alkali Soil

Liu Yan1,Li Bo1,Sun Wentao1,Yu Yang2   

  1. 1 Institute of Plant Nutrition and Environmental Resources,Liaoning Academy of Agricultural Sciences,Shenyang 110161,China
    2 Jilin Tobacco Companies Changchun Company,Changchun 130000,Jilin,China
  • Received:2016-12-03 Revised:2017-02-17 Online:2017-04-15 Published:2018-08-26
  • Contact: Wentao Sun

Abstract:

Pot experiment was carried out to study the effects of bio-organic fertilizer on physiological characters and yield of maize. The results showed that applying bio-organic fertilizer could improve SOD、POD and CAT activities under different salinity stress, The treatment T3 with 1% organic fertilizer on low,medium salinity stress was significantly higher than CK. At filling stage, the net photosynthetic rate (Pn) was also the highest, which reached 32.7, 30.6, 26.9μmol/(m2·s), respectively in the low, medium and high saline-alkali soils. The maize grain yields under T3 treatments increased significantly by 14.3%-24.9% compared with that of CK indicating that applying bio-organic fertilizer could enhance the salt resistance and grain yields of maize.

Key words: Bio-organic fertilizer, Maize, Saline-alkali Soil, Physiological characters, Yield

Table 1

The basic physical and chemical properties of soil"

土壤类型Soil type H M L
全盐量Total salt (%) 0.354 0.212 0.135
电导率Conductivity (μs/cm) 1 025 620 400
pH 8.6 8.3 8.2
全氮Total N (%) 0.056 0.103 0.145
有机质Organic matter (g/kg) 0.75 1.70 2.69
碱解氮Available N (mg/kg) 72 85 137
速效磷Available P (mg/kg) 7.46 10.96 11.24
速效钾Available K (mg/kg) 162 109 149

Fig.1

The effects of bio-organic fertilizer on SOD activity of ear leaf in spring maize H, M and L indicate high, medium and low saline soil, respectively; Different letters indicate significant differences (P < 0.05), the same below"

Fig.2

The effects of bio-organic fertilizer on POD activity of ear leaf in spring maize"

Fig.3

The effects of bio-organic fertilizer on CAT activity of ear leaf in spring maize"

Fig.4

The effects of bio-organic fertilizer on MDA content of ear leaf in spring maize"

Table 2

The effects of bio-organic fertilizer on photosynthetic characteristics of spring maize"

处理
Treatment
L M H
Pn[μmol/m2·s] Gs[mol/m2·s] Pn[μmol/m2·s] Gs[mol/m2·s] Pn[μmol/m2·s] Gs[mol/m2·s]
CK 26.5±0.1b 0.18±0.2b 23.2±0.2b 0.15±0.8b 17.4±0.7b 0.09±0.7b
T1 27.6±3.6b 0.14±1.1b 25.4±1.4ab 0.16±1.5b 20.7±0.1ab 0.12±1.3b
T2 31.8±3.3a 0.28±0.9a 28.5±0.7a 0.22±0.4ab 23.8±3.8ab 0.16±1.1b
T3 32.7±0.2a 0.32±0.5a 30.6±1.4a 0.29±0.9a 26.9±2.0a 0.22±0.3a

"

处理
Treatment
L M H
产量
Yield
生物量
Dry matter
产量
Yield
生物量
Dry matter
产量
Yield
生物量
Dry matter
CK 150.0b 314.0c 140.0b 240.0c 76.7b 146.7c
T1 151.8b 355.7b 148.3b 290.3b 95.0a 171.0bc
T2 156.7b 388.7b 158.3ab 292.3b 99.3a 209.3ab
T3 177.2a 428.7a 163.3a 305.3a 102.1a 246.3a
[1] Parida A K, Das A B . Salt to lerance and salinity effects on plants A review. Ecotoxicology & Environmental Safety, 2005,60:324-349.
[2] 王东明, 贾媛, 崔继哲 . 盐胁迫对植物的影响及植物盐适应性研究进展. 中国农学通报, 2009,25(4):124-128.
[3] 刘东兴 . 改良物质对盐碱土的改良作用及对植被生长发育的影响. 哈尔滨:东北林业大学, 2009.
[4] 李北齐, 王倡宪, 孟瑶 , 等. 生物有机肥对盐碱土壤养分及玉米产量的影响. 中国农学通报, 2011,27(21):182-186.
[5] 高亮, 丁春明, 王炳华 , 等. 生物有机肥在盐碱地上的应用效果及其对玉米的影响. 山西农业科学, 2011,39(1):47-50.
[6] 胡高峰, 张小勇, 莫海涛 , 等. 抗盐碱制剂对棉花幼苗生理生化特性的影响. 西北农业学报, 2009,18(2):169-172.
doi: 10.3969/j.issn.1004-1389.2009.02.037
[7] 王善仙, 刘宛, 李培军 , 等. 生物有机肥调控对盐碱胁迫下向日葵幼苗生长及生理指标的影响. 生态学杂志, 2011,30(4):682-688.
[8] 张金柱 . 生物有机肥对盐碱土理化性质及苜蓿生理反应影响的研究. 哈尔滨:东北农业大学, 2007.
doi: 10.7666/d.y1165306
[9] 王爱国, 罗广华 . 植物的超氧物自由基与羟胺反应的定量关系.植物生理学通讯, 1990(6):55-57.
[10] 李忠光, 李江鸿, 杜朝昆 . 在单一提取系统中同时测定五种植物抗氧化酶. 云南师范大学学报(自然科学版), 2002,22(6):44-48.
doi: 10.3969/j.issn.1007-9793.2002.06.011
[11] Chance B, Maehly A C . Assay of catalase and peroxidase. Methods in Enzymology, 1955,12:764-775.
[12] 林植芳, 李双顺, 林桂珠 , 等. 水稻叶片的衰老与超氧物歧化酶活性及脂质过氧化作用的关系. 植物学报, 1984,26(6):605-615.
[13] Leoplid A C, Niedergang-Kamien J , Experimental modification of plant senescence.Plant Physiology, 1959(34):570-573.
doi: 10.1104/pp.34.5.570 pmid: 16655275
[14] 陈少裕 . 膜脂过氧化对植物细胞的伤害. 植物生理学通讯, 1991,27(2):84-90.
[15] 陈海燕, 崔香菊, 陈熙 , 等. 盐胁迫及La 3+对不同耐盐性水稻根中抗氧化酶及质膜H +-ATPase的影响 . 作物学报, 2007,33(7):1086-1093.
[16] 张恩平, 张淑红, 司龙亭 , 等. NaCl胁迫对黄瓜幼苗子叶膜脂过氧化的影响. 沈阳农业大学学报, 2001,32(6):446-448.
[17] 夏更寿, 王加真 . 高盐胁迫对沟叶结缕草叶片抗氧化酶活性的影响. 河北农业大学学报, 2009,32(1):30-33.
[18] 崔曾杰 . 生物菌肥对盐碱地水稻生长发育及生理生态特性影响. 长春:吉林农业大学, 2013.
[19] 张川红, 尹伟伦, 沈应柏 . 盐胁迫对国槐与核桃气孔的影响. 北京林业大学学报, 2002,24(2):1-5.
[20] 杨玉玲, 刘文兆, 王俊 , 等. 配施钾肥、有机肥对旱地春玉米光合生理特性和产量的影响. 西北农业学报, 2009,18(3):116-121.
[21] 王晓娟, 贾志宽, 梁连友 , 等. 不同有机肥量对旱地玉米光合特性和产量的影响. 应用生态学报, 2012,23(2):419-425.
[1] Zhao Xin, Chen Shaofeng, Wang Hui, . Research on the Yield and Quality of Different Tartaty#br# Buckwheat Varieties in Northern Shanxi Area [J]. Crops, 2018, 34(5): 27-32.
[2] Chen Guangzhou, Wang Guangfu, Qu Jianzhou, Si Leiyong, . Study on Grain Dehydration Rate and#br# Correlation Analysis of Major Related#br# Characters in Different Maize Inbred Lines [J]. Crops, 2018, 34(5): 33-39.
[3] Su Guihua, Li Chunlei, Su Yichen. Evaluation of 22 Main Popularized Varieties#br# by Variety Regional Trails in Jilin Province [J]. Crops, 2018, 34(5): 63-70.
[4] Wu Ronghua, Zhuang Kezhang, Liu Peng, Zhang Chunyan. Response of Summer Maize Yield to#br# Meteorological Factors in Lunan Region [J]. Crops, 2018, 34(5): 104-109.
[5] Su Feifei, Zhang Jinghua, Li Yong, Liu Shangwu, Liu Zhenyu, Wang Shaopeng, Wan Shuming, Chen Xi, Gao Yunfei, Hu Linshuang, Lü Dianqiu. Effects of Different Irrigation Methods on#br# Physiological Characteristics and Water#br# Use Efficiency of Potato [J]. Crops, 2018, 34(5): 97-103.
[6] Zhang Ruidong, Cao Xiong, Yue Zhongxiao, . Effects of Nitrogen and Density Interaction on Grain#br# Yield and Nitrogen Use Efficiency of Sorghum [J]. Crops, 2018, 34(5): 110-115.
[7] An Xia, Zhang Haijun, Jiang Fangshan, Lü Lianjie, Chen Jun. Effects of Different Sowing Dates and Sowing#br# Densities on the Population Structure and#br# Yield of Two Spike Type Winter Wheats [J]. Crops, 2018, 34(5): 132-136.
[8] Li Shaokun, Zhang Wanxu, Wang Keru, Han Dongsheng, . Study on Maize Mechanical Grain#br# Harvest in Northern Xinjiang [J]. Crops, 2018, 34(5): 127-131.
[9] Gao Wenjun, Yang Guoyi, Gao Xinzhong, Yu Zhu, . The Effects of Nitrogen, Phosphorus, or Potassium#br# Fertilizer on the Yield and Silage Quality of Maize [J]. Crops, 2018, 34(5): 144-149.
[10] Wang Xiaolin, Ji Xiaoling, Zhang Panpan, Zhang Xiong, Zhang Jing. Correlation Analysis between Aboveground Biomass#br# Allocation and Grain Yield in Different Varieties of#br# Foxtail Millet in the Dry Land of Loess Plateau [J]. Crops, 2018, 34(5): 150-155.
[11] Hongyan Li,Yonghong Wang,Rulang Zhao,Wenjie Zhang,Bo Ming,Ruizhi Xie,Keru Wang,Lulu Li,Shang Gao,Shaokun Li. The Construction and Application of Maize Grain Dehydration Model in Yellow River Irrigation and Pumping Irrigation District in Ningxia [J]. Crops, 2018, 34(4): 149-153.
[12] Mei Lu,Min Sun,Aixia Ren,Miaomiao Lei,Lingzhu Xue,Zhiqiang Gao. Effects of Spraying Foliar Fertilizers on Dryland Wheat Growth and the Correlation with Yield Formation [J]. Crops, 2018, 34(4): 121-125.
[13] Xiaofei Wang,Haijun Xu,Mengqiao Guo,Yu Xiao,Xinyu Cheng,Shuxia Liu,Xiangjun Guan,Yaokun Wu,Weihua Zhao,Guojiang Wei. Effects of Sowing Date, Density and Fertilizer Utilization Rate on the Yield of Oilseed Perilla frutescens in Cold Area [J]. Crops, 2018, 34(4): 126-130.
[14] Jie Gao,Qingfeng Li,Qiu Peng,Xiaoyan Jiao,Jinsong Wang. Effects of Different Nutrient Combinations on Plant Production and Nitrogen, Phosphorus and Potassium Utilization Characteristics in Waxy Sorghum [J]. Crops, 2018, 34(4): 138-142.
[15] Na Shang,Zhongxu Yang,Qiuzhi Li,Huihui Yin,Shihong Wang,Haitao Li,Tong Li,Han Zhang. Response of Cotton with Vegetative Branches to Plant Density in the Western of Shandong Province [J]. Crops, 2018, 34(4): 143-148.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] Guangcai Zhao,Xuhong Chang,Demei Wang,Zhiqiang Tao,Yanjie Wang,Yushuang Yang,Yingjie Zhu. General Situation and Development of Wheat Production[J]. Crops, 2018, 34(4): 1 -7 .
[2] Baoquan Quan,Dongmei Bai,Yuexia Tian,Yunyun Xue. Effects of Different Leaf-Peg Ratio on Photosynthesis and Yield of Peanut[J]. Crops, 2018, 34(4): 102 -105 .
[3] Xuefang Huang,Mingjing Huang,Huatao Liu,Cong Zhao,Juanling Wang. Effects of Annual Precipitation and Population Density on Tiller-Earing and Yield of Zhangzagu 5 under Film Mulching and Hole Sowing[J]. Crops, 2018, 34(4): 106 -113 .
[4] Wenhui Huang, Hui Wang, Desheng Mei. Research Progress on Lodging Resistance of Crops[J]. Crops, 2018, 34(4): 13 -19 .
[5] Yun Zhao,Cailong Xu,Xu Yang,Suzhen Li,Jing Zhou,Jicun Li,Tianfu Han,Cunxiang Wu. Effects of Sowing Methods on Seedling Stand and Production Profit of Summer Soybean under Wheat-Soybean System[J]. Crops, 2018, 34(4): 114 -120 .
[6] Mei Lu,Min Sun,Aixia Ren,Miaomiao Lei,Lingzhu Xue,Zhiqiang Gao. Effects of Spraying Foliar Fertilizers on Dryland Wheat Growth and the Correlation with Yield Formation[J]. Crops, 2018, 34(4): 121 -125 .
[7] Xiaofei Wang,Haijun Xu,Mengqiao Guo,Yu Xiao,Xinyu Cheng,Shuxia Liu,Xiangjun Guan,Yaokun Wu,Weihua Zhao,Guojiang Wei. Effects of Sowing Date, Density and Fertilizer Utilization Rate on the Yield of Oilseed Perilla frutescens in Cold Area[J]. Crops, 2018, 34(4): 126 -130 .
[8] Pengjin Zhu,Xinhua Pang,Chun Liang,Qinliang Tan,Lin Yan,Quanguang Zhou,Kewei Ou. Effects of Cold Stress on Reactive Oxygen Metabolism and Antioxidant Enzyme Activities of Sugarcane Seedlings[J]. Crops, 2018, 34(4): 131 -137 .
[9] Jie Gao,Qingfeng Li,Qiu Peng,Xiaoyan Jiao,Jinsong Wang. Effects of Different Nutrient Combinations on Plant Production and Nitrogen, Phosphorus and Potassium Utilization Characteristics in Waxy Sorghum[J]. Crops, 2018, 34(4): 138 -142 .
[10] Na Shang,Zhongxu Yang,Qiuzhi Li,Huihui Yin,Shihong Wang,Haitao Li,Tong Li,Han Zhang. Response of Cotton with Vegetative Branches to Plant Density in the Western of Shandong Province[J]. Crops, 2018, 34(4): 143 -148 .